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Direct observation of dynamic interaction between a functional group in a single SBR chain and an inorganic matter surface

机译:直接观察单个SBR链中的官能团与无机物表面之间的动态相互作用

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摘要

As a composite of hybrid organic-inorganic materials, blending hydrophilic silica microparticles with oil-extended rubber can improve vehicle tire performance but the nanometer scale effects of microparticle inclusion have not been thoroughly studied. Here, we used atomic force microscopy (AFM) video imaging to closely investigate the behavior of functionalized and unmodified styrene-butadiene rubber (SBR), as models for tire rubber, on mica surfaces. The hydrophilic silica microparticle surface could be simulated by a mica substrate because both have silanol groups on their surface. Using AFM video imaging, we tracked the behavior of individual SBR polymer chains on mica surfaces to reveal how polymer modification affects the interaction of SBR with mica surfaces. We measured the diffusion coefficients and spring constants of single SBR polymer chains for the first time, demonstrating that it is possible to parameterize the relationship between the molecular dynamic structure of a polymer and rubber properties of the vulcanized compound.
机译:作为有机-无机杂化材料的复合材料,将亲水性二氧化硅微粒与充油橡胶共混可以改善车辆轮胎的性能,但尚未充分研究微粒包裹体的纳米尺度效应。在这里,我们使用原子力显微镜(AFM)视频成像来密切研究功能化和未改性的丁苯橡胶(SBR)(作为轮胎橡胶的模型)在云母表面上的行为。云母基质可以模拟亲水性二氧化硅微粒表面,因为两者均在其表面上均具有硅烷醇基。使用AFM视频成像,我们跟踪了云母表面上单个SBR聚合物链的行为,以揭示聚合物改性如何影响SBR与云母表面的相互作用。我们首次测量了单条SBR聚合物链的扩散系数和弹簧常数,这表明可以参数化聚合物的分子动力学结构与硫化化合物的橡胶性能之间的关系。

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